Category:
Research Papers
Sub-Category:
Mathematical Physics
Date Published:
November 18, 2025
Keywords:
Universal Quantum Equilibrium: Dynamic Flux, Stress Tension. (DFST) Gauge TheoryTensor Calculus
Abstract:
We present Universal Quantum Equilibrium (UQE), a unified theoretical framework that integrates quantum fields, gravitemporal scalars, Higgs morphogens, coherence tensors, and amorphicity order parameters across solids, liquids, gases, and plasmas. The extended action yields Euler–Lagrange equations in which each sector contributes a stress–energy tensor whose divergence cancels against partner sectors, ensuring conservation under the Classical and Quantum Master Equations. The architecture embodies a principle of Dynamic Flux, Stress Tension (DFST) — a counterbalance in countervailing flux, tension, stress, and dynamics — where probabilistic superpositions achieve structured harmony through intrinsic equilibrium.
Combining disparate mathematical languages:
- Quantum field theory (QFT) for wavefunctions, operators, and path integrals.
- General relativity (GR) for covariant derivatives, stress–energy tensors, and curvature couplings.
- Gauge theory for symmetry constraints and conserved currents.
- Nonlinear dynamics and PDE analysis for amorphicity fields and emergent structures.
- Statistical mechanics for probabilistic superpositions and equilibrium ensembles.
- Tensor calculus for coherence routing and gravitemporal modulation.
Together, these languages are reconciled within a single variational principle, allowing DFST to emerge as the balancing mechanism across scales.
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